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  4. Decoding Neural Metabolic Markers From the Carotid Sinus Nerve in a Type 2 Diabetes Model
 
research article

Decoding Neural Metabolic Markers From the Carotid Sinus Nerve in a Type 2 Diabetes Model

Cracchiolo, Marina
•
Sacramento, Joana F.
•
Mazzoni, Alberto
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October 1, 2019
Ieee Transactions On Neural Systems And Rehabilitation Engineering

Recent studies showed that the carotid sinus nerve (CSN) and the sympathetic nervous system (SNS) are overactivated in type 2 diabetes and that restoring the correct CSN neural activity can re-establish the proper metabolism. However, a robust characterization of the relationship between CSN and SNS neural activities and metabolism in type 2 diabetes is still missing. Here, we investigated the relationship between neural activity of CSN and SNS in control rats and in rats with diet-induced type 2 diabetes and the animal condition during metabolic challenges. We found that the diabetic condition can be discriminated on the basis of CSN and SNS neural activities due to a high-frequency shift in both spectra. This shift is suppressed in the SNS in case of CSN denervation, confirming the role of CSN in driving sympathetic overactivation in type 2 diabetes. Interestingly, the Inter-Burst-Intervals (IBIs) calculated from CSN bursts strongly correlate with perturbations in glycaemia levels. This finding, held for both control and diabetic rats, indicates the possibility of detecting metabolic information from neural recordings even in pathological conditions. Our results suggest that CSN activity could serve as a marker to monitor glycaemic alterations and, therefore, it could be used for closed-loop control of CSN neuromodulation. This paves the way to the development of novel and effective bioelectronic therapies for type 2 diabetes.

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Type
research article
DOI
10.1109/TNSRE.2019.2942398
Web of Science ID

WOS:000497685900010

Author(s)
Cracchiolo, Marina
Sacramento, Joana F.
Mazzoni, Alberto
Panarese, Alessandro
Carpaneto, Jacopo
Conde, Silvia V.
Micera, Silvestro  
Date Issued

2019-10-01

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC

Published in
Ieee Transactions On Neural Systems And Rehabilitation Engineering
Volume

27

Issue

10

Start page

2034

End page

2043

Subjects

Engineering, Biomedical

•

Rehabilitation

•

Engineering

•

carotid sinus nerve

•

carotid sinus nerve resection

•

glucose intolerance

•

insulin resistance

•

sympathetic nervous system activity

•

type 2 diabetes

•

bioelectronic medicines

•

insulin-resistance

•

body

•

chemoreceptors

•

hypertension

•

denervation

•

prevents

•

signals

•

bodies

•

system

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
TNE  
Available on Infoscience
December 4, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/163530
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